作者
Milad Kiaee, Herbert Wachtel, Michelle L Noga, Andrew R Martin, Warren H Finlay
发表日期
2018/5
期刊
International Journal for Numerical Methods in Biomedical Engineering
卷号
34
期号
5
页码范围
e2968
简介
The present work examines regional deposition within the nose for nasal sprays over a large and wide ranging parameter space by using numerical simulation. A set of 7 realistic adult nasal airway geometries was defined based on computed tomography images. Deposition in 6 regions of each nasal airway geometry (the vestibule, valve, anterior turbinate, posterior turbinate, olfactory, and nasopharynx) was determined for varying particle diameter, spray cone angle, spray release direction, particle injection speed, and particle injection location. Penetration of nasal spray particles through the airway geometries represented unintended lung exposure. Penetration was found to be relatively insensitive to injection velocity, but highly sensitive to particle size. Penetration remained at or above 30% for particles exceeding 10 μm in diameter for several airway geometries studied. Deposition in the turbinates, viewed as …
引用总数
201820192020202120222023202434681283
学术搜索中的文章
M Kiaee, H Wachtel, ML Noga, AR Martin, WH Finlay - International Journal for Numerical Methods in …, 2018